Ziegler H, Meister D, Dunn I J
Biotechnol Bioeng. 1977 Apr;19(4):507-25. doi: 10.1002/bit.260190406.
Oxygen transfer measurements using a dynamic method and evaluated with an appropriate mathematical model have been made on a tubular loop bioreactor, Correlations of the type used in tank systmes are used to describe the influence of power and aeration rate on the mass transfer coefficient. Yeast cultures grown on hydrocarbon and glucose substrates show growth characteristics similar to conventional tank results. Model considerations for large-scale tubular fermentors allow for the prediction of the steady-state oxygen profiles and maximum reactor length. Combination with two-phases flow and oxygen transfer correlations yields a design procedure for commercial scale tubular loop fermentors.
采用动态方法并使用适当的数学模型对管式环流生物反应器进行了氧传递测量。利用罐式系统中使用的相关类型来描述功率和曝气速率对传质系数的影响。在烃类和葡萄糖底物上生长的酵母培养物显示出与传统罐式结果相似的生长特性。对大型管式发酵罐的模型考量有助于预测稳态氧分布和最大反应器长度。将两相流与氧传递相关性相结合,得出了商业规模管式环流发酵罐的设计程序。